Modern diatom, cladocera, chironomid, and chrysophyte cyst assemblages as quantitative indicators for the reconstruction of past environmental conditions in the Alps. I. Climate
Publication date
1997
Authors
Lotter, A.F.
Birks, H.J.B.
Hofmann, W.
Marchetto, A.
Editors
Advisors
Supervisors
Document Type
Article
Metadata
Show full item recordCollections
License
Abstract
Diatom, chrysophyte cyst, benthic cladocera, planktonic cladocera, and chironomid assemblages were studied
in the surface sediments of 68 small lakes along an altitudinal gradient from 300 to 2350 m in Switzerland. In
addition, 43 environmental variables relating to the physical limnology, geography, catchment characteristics,
climate, and water chemistry were recorded or measured for each lake. The explanatory power of each of these
predictor variables for the different biological data-sets was estimated by a series of canonical correspondence
analyses (CCA) and the statistical significance of each model was assessed by Monte Carlo permutation tests. A
minimal set of environmental variables was found for each biological data-set by a forward-selection procedure
within CCA. The unique, independent explanatory power of each set of environmental variables was estimated by a
series of CCAs and partial CCAs. Inference models or transfer functions for mean summer (June, July, August) air
temperature were developed for each biological data-set using weighted-averaging partial least squares or partial
least squares. The final transfer functions, after data screening, have root mean squared errors of prediction,
as assessed by leave-one-out cross-validation, of 1.37 0C (chironomids), 1.60 0C (benthic cladocera), 1.62 0C
(diatoms), 1.77 0C (planktonic cladocera), and 2.23 0C (chrysophyte cysts).
Keywords
transfer functions, weighted-averaging partial-least-squares, summer temperatures, surface sediments, modern training-sets, Switzerland